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Synchrophasor measurement-based approach for online available transfer capability evaluation

机译:基于同步相量测量的在线可用传输能力评估方法

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This study proposes a synchrophasor measurement-based approach for online available transfer capability (ATC) evaluation. It utilises an expression which correlates the nodal power injections to the line flows. A new set of measurement-dependent injection distribution factors (MDIDFs) has been computed using this expression. The measurements, obtained from optimally placed phasor measurement units, are used to carry out linear state estimation (LSE). The voltage phasors of all system buses, obtained by LSE, are required to compute the MDIDFs. ATCs for bilateral and multilateral transactions are directly evaluated using these MDIDFs for system intact and $N - 1$N-1 contingency cases. If required, the MDIDFs can also be used to directly compute AC power transfer distribution factors and line outage distribution factors without factorising the Jacobian of AC power flow (ACPF). The proposed approach has been validated in real-time digital simulator at different system operating points of WSCC 9-bus and IEEE 14-bus systems. Simulations are also performed on an Indian 246-bus Northern Regional Power Grid system to demonstrate the effectiveness of the proposed approach. The results thus obtained, when compared with those evaluated through repeated ACPF-based approach, prove the efficacy of the proposed approach.
机译:这项研究提出了一种基于同步相量测量的在线可用传输能力(ATC)评估方法。它利用将节点功率注入与线路流相关联的表达式。使用此表达式已计算出一组新的依赖测量的注入分布因子(MDIDF)。从最佳放置的相量测量单元获得的测量结果用于执行线性状态估计(LSE)。由LSE获得的所有系统总线的电压相量都需要计算MDIDF。使用这些MDIDF对系统完好和$ N-$$ N-1应急情况直接评估双边和多边交易的ATC。如果需要,MDIDF还可用于直接计算交流功率传输分配因子和线路中断分布因子,而无需考虑交流功率流(ACPF)的雅可比行列式。在WSCC 9总线和IEEE 14总线系统的不同系统操作点上,在实时数字仿真器中对提出的方法进行了验证。还对印度246辆巴士的北部区域电网系统进行了仿真,以证明所提出方法的有效性。因此,与通过重复基于ACPF的方法评估的结果相比,所获得的结果证明了所提出方法的有效性。

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